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From the preface: Fluid dynamics is an excellent example of how
recent advances in computational tools and techniques permit the
rapid advance of basic and applied science. The development of
computational fluid dynamics (CFD) has opened new areas of research
and has significantly supplemented information available from
experimental measurements. Scientific computing is directly
responsible for such recent developments as the secondary
instability theory of transition to turbulence, dynamical systems
analyses of routes to chaos, ideas on the geometry of turbulence,
direct simulations of turbulence, three-dimensional full-aircraft
flow analyses, and so on. We believe that CFD has already achieved
a status in the tool-kit of fluid mechanicians equal to that of the
classical scientific techniques of mathematical analysis and
laboratory experiment.
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